BF393ZL1G [ONSEMI]
晶体管硅塑料 NPN;型号: | BF393ZL1G |
厂家: | ONSEMI |
描述: | 晶体管硅塑料 NPN 小信号双极晶体管 |
文件: | 总4页 (文件大小:92K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
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by BF393/D
SEMICONDUCTOR TECHNICAL DATA
NPN Silicon
COLLECTOR
3
2
BASE
1
EMITTER
1
2
3
MAXIMUM RATINGS
CASE 29–04, STYLE 1
TO–92 (TO–226AA)
Rating
Collector–Emitter Voltage
Collector–Base Voltage
Emitter–Base Voltage
Symbol
Value
300
300
6.0
Unit
V
CEO
V
CBO
V
EBO
Vdc
Vdc
Vdc
Collector Current — Continuous
I
C
500
mAdc
Total Device Dissipation @ T = 25°C
Derate above 25°C
P
D
625
5.0
mW
mW/°C
A
Total Device Dissipation @ T = 25°C
Derate above 25°C
P
D
1.5
12
Watts
mW/°C
C
Operating and Storage Junction
Temperature Range
T , T
–55 to +150
°C
J
stg
THERMAL CHARACTERISTICS
Characteristic
Symbol
Max
Unit
Thermal Resistance, Junction to
Ambient
R
200
°C/W
JA
Thermal Resistance, Junction to Case
R
83.3
°C/W
JC
ELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted)
A
Characteristic
Symbol
Min
Max
Unit
OFF CHARACTERISTICS
(1)
Collector–Emitter Breakdown Voltage
(I = 1.0 mAdc, I =0)
V
V
Vdc
Vdc
(BR)CEO
300
300
6.0
—
—
—
C
B
Collector–Base Breakdown Voltage
(I = 100 Adc, I = 0)
(BR)CBO
C
E
Emitter–Base Breakdown Voltage
(I = 100 Adc, I = 0)
V
Vdc
(BR)EBO
—
E
C
Collector Cutoff Current
(V = 200 Vdc, I = 0)
I
µAdc
µAdc
CBO
0.1
0.1
CB
Emitter Cutoff Current
(V = 6.0 Vdc, I = 0)
E
I
EBO
—
EB
C
1. Pulse Test: Pulse Width
300 s; Duty Cycle
2.0%.
(Replaces BF392/D)
Motorola, Inc. 1997
ELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted) (Continued)
A
Characteristic
ON CHARACTERISTICS
Symbol
Min
Max
Unit
DC Current Gain
h
FE
—
(I = 1.0 mAdc, V
= 10 Vdc)
CE
= 10 Vdc)
CE
25
40
—
—
C
(I = 10 mAdc, V
C
Collector–Emitter Saturation Voltage
(I = 20 mAdc, I = 2.0 mAdc)
V
V
Vdc
Vdc
CE(sat)
—
—
2.0
2.0
C
B
Base–Emitter Saturation Voltage
(I = 20 mAdc, I = 2.0 mAdc)
BE(sat)
C
B
SMALL–SIGNAL CHARACTERISTICS
CurrentGain — Bandwidth Product
f
MHz
pF
T
(I = 10 mAdc, V
= 20 Vdc, f = 20 MHz)
50
—
—
C
CE
Common Emitter Feedback Capacitance
(V = 60 Vdc, I = 0, f = 1.0 MHz)
C
re
2.0
CB
E
2
Motorola Small–Signal Transistors, FETs and Diodes Device Data
200
100
50
V
= 10 Vdc
CE
T
= +125°C
J
25°C
–55°C
30
20
1.0
2.0
3.0
5.0
7.0
, COLLECTOR CURRENT (mA)
10
20
30
50
70
100
I
C
Figure 1. DC Current Gain
100
50
100
70
50
C
eb
20
10
T
= 25°C
= 20 V
J
V
CE
f = 20 MHz
30
20
5.0
C
2.0
1.0
cb
10
1.0
0.2
0.5
1.0
2.0
5.0
10
20
50
100 200
2.0 3.0
5.0 7.0 10
20
30
50 70 100
V
, REVERSE VOLTAGE (VOLTS)
I
, COLLECTOR CURRENT (mA)
R
C
Figure 2. Capacitances
Figure 3. Current–Gain — Bandwidth Product
1.4
1.2
1.0
500
10
1.0 ms
µs
100 µs
T
= 25°C
J
T
= 25
°
C
A
200
100
50
T
= 25°C
C
100 ms
0.8
0.6
0.4
0.2
0
V
@ I /I = 10
C B
BE(sat)
20
10
CURRENT LIMIT
THERMAL LIMIT
V
@ V
= 10 V
CE
BE(on)
5.0
(PULSE CURVES @ T = 25
°C)
C
SECOND BREAKDOWN LIMIT
2.0
1.0
0.5
CURVES APPLY
BELOW RATED V
V
@ I /I = 10
C B
CE(sat)
MPSA43
MPSA42
CEO
1.0
2.0 3.0
5.0 7.0 10
20
30
50 70 100
0.5
1.0
2.0
5.0
10
20
50
100 200
500
I
, COLLECTOR CURRENT (mA)
V
, COLLECTOR–EMITTER VOLTAGE (VOLTS)
C
CE
Figure 4. “On” Voltages
Figure 5. Maximum Forward Bias
Safe Operating Area
Motorola Small–Signal Transistors, FETs and Diodes Device Data
3
PACKAGE DIMENSIONS
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
3. CONTOUR OF PACKAGE BEYOND DIMENSION R
IS UNCONTROLLED.
A
B
4. DIMENSION F APPLIES BETWEEN P AND L.
DIMENSION D AND J APPLY BETWEEN L AND K
MINIMUM. LEAD DIMENSION IS UNCONTROLLED
IN P AND BEYOND DIMENSION K MINIMUM.
R
P
L
F
SEATING
PLANE
INCHES
MIN
MILLIMETERS
K
DIM
A
B
C
D
F
G
H
J
K
L
N
P
MAX
0.205
0.210
0.165
0.022
0.019
0.055
0.105
0.020
–––
MIN
4.45
4.32
3.18
0.41
0.41
1.15
2.42
0.39
12.70
6.35
2.04
–––
MAX
5.20
5.33
4.19
0.55
0.48
1.39
2.66
0.50
–––
0.175
0.170
0.125
0.016
0.016
0.045
0.095
0.015
0.500
0.250
0.080
–––
D
J
X X
G
H
V
SECTION X–X
C
–––
–––
0.105
0.100
–––
2.66
2.54
–––
1
N
R
V
0.115
0.135
2.93
3.43
N
–––
–––
STYLE 1:
PIN 1. EMITTER
CASE 029–04
(TO–226AA)
ISSUE AD
2. BASE
3. COLLECTOR
Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding
the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and
specificallydisclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters which may be provided in Motorola
datasheetsand/orspecificationscananddovaryindifferentapplicationsandactualperformancemayvaryovertime. Alloperatingparameters,including“Typicals”
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